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AHRQ Research Studies
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Research Studies is a compilation of published research articles funded by AHRQ or authored by AHRQ researchers.
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1 to 3 of 3 Research Studies DisplayedBurnham CA, Hogan PG, Wallace MA
Topical decolonization does not eradicate the skin microbiota of community-dwelling or hospitalized adults.
The authors compared microbial communities and levels of richness and diversity in community-dwelling subjects and in intensive care unit patients before and after the use of topical decolonization protocols. They found a reduction in S. aureus without eradicating endogenous microbiota.
AHRQ-funded; HS021736; HS024269.
Citation: Burnham CA, Hogan PG, Wallace MA .
Topical decolonization does not eradicate the skin microbiota of community-dwelling or hospitalized adults.
Antimicrob Agents Chemother 2016 Dec;60(12):7303-12. doi: 10.1128/aac.01289-16.
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Keywords: Antimicrobial Stewardship, Antibiotics, Infectious Diseases, Prevention, Patient Safety
Bartsch SM, Huang SS, Wong KF
Impact of delays between Clinical and Laboratory Standards Institute and Food and Drug Administration revisions of interpretive criteria for carbapenem-resistant enterobacteriaceae.
The authors used their Regional Healthcare Ecosystem Analyst (RHEA) simulation model and found that the 32-month delay in changing carbapenem-resistant Enterobacteriaceae (CRE) breakpoints might have resulted in 1,821 additional carriers in Orange County, CA. They recommend that policymakers aim to minimize the delay in the adoption of new breakpoints for antimicrobials against emerging pathogens when containment of spread is paramount, ideally less than 1.5 years.
AHRQ-funded; HS023317.
Citation: Bartsch SM, Huang SS, Wong KF .
Impact of delays between Clinical and Laboratory Standards Institute and Food and Drug Administration revisions of interpretive criteria for carbapenem-resistant enterobacteriaceae.
J Clin Microbiol 2016 Nov;54(11):2757-62. doi: 10.1128/jcm.00635-16.
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Keywords: Infectious Diseases, Antibiotics, Antimicrobial Stewardship
Wares JR, Lawson B, Shemin D
Evaluating infection prevention strategies in out-patient dialysis units using agent-based modeling.
The researchers hypothesized that targeting patients receiving antimicrobial treatment would more effectively reduce transmission and acquisition of multidrug-resistant organisms (MDRO) and further that environmental contamination plays a role in the dissemination of MDRO in the dialysis unit. They found that reducing antimicrobial treatment markedly reduces overall colonization rates and also the levels of environmental contamination in the dialysis unit. They suggested that improving the environmental decontamination efficacy between patient dialysis treatments as an effective method for reducing colonization and contamination rates.
AHRQ-funded; HS021666.
Citation: Wares JR, Lawson B, Shemin D .
Evaluating infection prevention strategies in out-patient dialysis units using agent-based modeling.
PLoS One 2016 May 19;11(5):e0153820. doi: 10.1371/journal.pone.0153820.
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Keywords: Antimicrobial Stewardship, Antibiotics, Medication, Healthcare-Associated Infections (HAIs), Prevention, Ambulatory Care and Surgery, Infectious Diseases